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  1. Numbers and Arithmetic: Neither Hardwired Nor Out There.Rafael Núñez - 2009 - Biological Theory 4 (1):68-83.
    What is the nature of number systems and arithmetic that we use in science for quantification, analysis, and modeling? I argue that number concepts and arithmetic are neither hardwired in the brain, nor do they exist out there in the universe. Innate subitizing and early cognitive preconditions for number— which we share with many other species—cannot provide the foundations for the precision, richness, and range of number concepts and simple arithmetic, let alone that of more complex mathematical concepts. Numbers and (...)
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  • Dimensions of Reliability in Phenomenal Judgment.Brentyn J. Ramm - 2016 - Journal of Consciousness Studies 23 (3-4):101-127.
    Eric Schwitzgebel (2011) argues that phenomenal judgments are in general less reliable than perceptual judgments. This paper distinguishes two versions of this unreliability thesis. The process unreliability thesis says that unreliability in phenomenal judgments is due to faulty domain-specific mechanisms involved in producing these judgments, whereas the statistical unreliability thesis says that it is simply a matter of higher numbers of errors. Against the process unreliability thesis, I argue that the main errors and limitations in making phenomenal judgments can be (...)
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  • Genetic influences on sex differences in outstanding mathematical reasoning ability.Ada H. Zohar - 1996 - Behavioral and Brain Sciences 19 (2):266-267.
    Sexual selection provides an adequate partial explanation for the difference in means between the distributions, but fails to explain the difference in variance, that is, the overrepresentation of both boys with outstanding mathematical reasoning ability and boys with mental retardation. Other genetic factors are probably at work. While spatial ability is correlated with OMRA, so are other cognitive abilities. OMRA is not reducible to spatial ability; hence selection for navigational skill is unlikely to be the only mechanism by which males (...)
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  • High confidence and low accuracy in redundancy masking.Fazilet Zeynep Yildirim & Bilge Sayim - 2022 - Consciousness and Cognition 102:103349.
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  • Sex differences and evolutionary by-products.Thomas Wynn, Forrest Tierson & Craig Palmer - 1996 - Behavioral and Brain Sciences 19 (2):265-266.
    From the perspective of evolutionary theory, we believe it makes more sense to view the sex differences in spatial cognition as being an evolutionary by-product of selection for optimal rates of fetal development. Geary does not convince us that his proposed selective factors operated with “sufficient precision, economy, and efficiency.” Moreover, the archaeological evidence does not support his proposed evolutionary scenario.
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  • Children's understanding of counting.Karen Wynn - 1990 - Cognition 36 (2):155-193.
  • Magic in the machine: a computational magician's assistant.Howard Williams & Peter W. McOwan - 2014 - Frontiers in Psychology 5.
  • An association between understanding cardinality and analog magnitude representations in preschoolers.Jennifer B. Wagner & Susan C. Johnson - 2011 - Cognition 119 (1):10-22.
  • Difficulties of demonstrating the possession of concepts.Ernst von Glasersfeld - 1988 - Behavioral and Brain Sciences 11 (4):601-602.
  • Fast automated counting procedures in addition problem solving: When are they used and why are they mistaken for retrieval?Kim Uittenhove, Catherine Thevenot & Pierre Barrouillet - 2016 - Cognition 146 (C):289-303.
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  • Evidence for a Global Sampling Process in Extraction of Summary Statistics of Item Sizes in a Set.Midori Tokita, Sachiyo Ueda & Akira Ishiguchi - 2016 - Frontiers in Psychology 7:190369.
    Several studies have shown that our visual system may construct a “summary statistical representation” over groups of visual objects. Although there is a general understanding that human observers can accurately represent sets of a variety of features, many questions on how summary statistics, such as an average, are computed remain unanswered. This study investigated sampling properties of visual information used by human observers to extract two types of summary statistics of item sets, average and variance. We presented three models of (...)
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  • To honor Davis & Pérusse and repeal their glossary of processes of numerical competence.Roger K. Thomas - 1988 - Behavioral and Brain Sciences 11 (4):600-600.
  • Between-sex differences are often averaging artifacts.Hoben Thomas - 1996 - Behavioral and Brain Sciences 19 (2):265-265.
    The central problem in Geary's theory is how differences are conceptualized. Recent research has shown that between-sex differences on certain tasks are a consequence of averaging within sex differences. A mixture distribution models between-sex differences on several tasks well and does not appear congenial to a sexual-selection perspective.
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  • Ten-year-old children strategies in mental addition: A counting model account.Catherine Thevenot, Pierre Barrouillet, Caroline Castel & Kim Uittenhove - 2016 - Cognition 146 (C):48-57.
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  • We are far from understanding sex-related differences in spatial-mathematical abilities despite the theory of sexual selection.Üner Tan - 1996 - Behavioral and Brain Sciences 19 (2):264-264.
    I have provided evidence that Geary's model does not explain male dominance in spatial abilities by sexual selection. The current literature concerning the relations of nonverbal IQ to testosterone, hand preference, and right- and left-hand skill, as well as the organizing effects of testosterone on cerebral lateralization during the perinatal period, does not support Geary's arguments.
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  • Problems of axiomatics and complexity in studying numerical competence in animals.Patrick Suppes - 1988 - Behavioral and Brain Sciences 11 (4):599-599.
  • Possibilities for the construction of a sense of number by animals.Leslie P. Steffe - 1988 - Behavioral and Brain Sciences 11 (4):598-599.
  • Numerical abstraction by human infants.Prentice Starkey, Elizabeth S. Spelke & Rochel Gelman - 1990 - Cognition 36 (2):97-127.
  • Able youths and achievement tests.Julian C. Stanley & Heinrich Stumpf - 1996 - Behavioral and Brain Sciences 19 (2):263-264.
    Achievement test differences between boys and girls and between young men and young women, mostly favoring males, extend far beyond mathematics. Such pervasive differences, illustrated here, may require an explanatory theory broader than Geary's.
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  • Processing of Numerical and Proportional Quantifiers.Sailee Shikhare, Stefan Heim, Elise Klein, Stefan Huber & Klaus Willmes - 2015 - Cognitive Science 39 (7):1504-1536.
    Quantifier expressions like “many” and “at least” are part of a rich repository of words in language representing magnitude information. The role of numerical processing in comprehending quantifiers was studied in a semantic truth value judgment task, asking adults to quickly verify sentences about visual displays using numerical or proportional quantifiers. The visual displays were composed of systematically varied proportions of yellow and blue circles. The results demonstrated that numerical estimation and numerical reference information are fundamental in encoding the meaning (...)
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  • Spatial visualization and sex-related differences in mathematical problem solving.Julia A. Sherman - 1996 - Behavioral and Brain Sciences 19 (2):262-263.
    Spatial visualization as a key variable in sex-related differences in mathematical problem solving and spatial aspects of geometry is traced to the 1960s. More recent relevant data are presented. The variability debate is traced to the latter part of the nineteenth century and an explanation for it is suggested. An idea is presented for further research to clarify sex-related brain laterality differences in solving spatial problems.
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  • Are animals naturally attuned to number?Uta Seibt - 1988 - Behavioral and Brain Sciences 11 (4):597-598.
  • Language and counting in animals: Stimulus classes and equivalence relations.Ronald J. Schusterman - 1988 - Behavioral and Brain Sciences 11 (4):596-597.
  • The twain shall meet: Uniting the analysis of sex differences and within-sex variation.David C. Rowe - 1996 - Behavioral and Brain Sciences 19 (2):262-262.
    Spatial and mathematical abilities may be “sex-limited” traits. A sex-limited trait has the same determinants of variation within the sexes, but the genetic or environmental effects would be differentially expressed in males and females. New advances in structural equation modeling allow means and variation to be estimated simultaneously. When these statistical methods are combined with a genetically informative research design, it should be possible to demonstrate that the genes influencing spatial and mathematical abilities are sex-limited in their expression. This approach (...)
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  • Priming reveals differential coding of symbolic and non-symbolic quantities.Chantal Roggeman, Tom Verguts & Wim Fias - 2007 - Cognition 105 (2):380-394.
  • Giving the boot to the bootstrap: How not to learn the natural numbers.Lance J. Rips, Jennifer Asmuth & Amber Bloomfield - 2006 - Cognition 101 (3):B51-B60.
  • The role of attention in subitizing.Henry Railo, Mika Koivisto, Antti Revonsuo & Minna M. Hannula - 2008 - Cognition 107 (1):82-104.
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  • Cognitive Structuralism: Explaining the Regularity of the Natural Numbers Progression.Paula Quinon - 2022 - Review of Philosophy and Psychology 13 (1):127-149.
    According to one of the most powerful paradigms explaining the meaning of the concept of natural number, natural numbers get a large part of their conceptual content from core cognitive abilities. Carey’s bootstrapping provides a model of the role of core cognition in the creation of mature mathematical concepts. In this paper, I conduct conceptual analyses of various theories within this paradigm, concluding that the theories based on the ability to subitize (i.e., to assess anexactquantity of the elements in a (...)
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  • The logic of the sociobiological model Geary-style.Diane Proudfoot - 1996 - Behavioral and Brain Sciences 19 (2):261-261.
    Geary's is the traditional view of the sexes. Yet each part of his argument – the move from sex differences in spatial ability and social preferences to a sex difference in mathematical ability, the claim that the former are biologically primary, and the sociobiological explanation of these differences – requires considerable further work. The notion of a biologically secondary ability is itself problematic.
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  • Intentional subitizing: Exploring the role of automaticity in enumeration.Hannah L. Pincham & Dénes Szűcs - 2012 - Cognition 124 (2):107-116.
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  • Computational Evidence for the Subitizing Phenomenon as an Emergent Property of the Human Cognitive Architecture.Scott A. Peterson & Tony J. Simon - 2000 - Cognitive Science 24 (1):93-122.
    A computational modeling approach was used to test one possible explanation for the limited capacity of the subitizing phenomenon. Most existing models of this phenomenon associate the subitizing span with an assumed structural limitation of the human information processing system. In contrast, we show how this limit might emerge as the combinatorics of the space of enumeration problems interacts with the human cognitive architecture in the context of an enumeration task. Subitizing‐like behavior was generated in two different models of enumeration, (...)
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  • Studying numerical competence: A trip through linguistic wonderland?Irene M. Pepperberg - 1988 - Behavioral and Brain Sciences 11 (4):595-596.
  • Spatial skills and number skills in preschool children: The moderating role of spatial anxiety.Xiangzi Ouyang, Xiao Zhang & Qiusi Zhang - 2022 - Cognition 225 (C):105165.
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  • About the influence of the presentation format on arithmetical-fact retrieval processes.Marie-Pascale Noël, Wim Fias & Marc Brysbaert - 1997 - Cognition 63 (3):335-374.
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  • Absolute Numerosity Discrimination as a Case Study in Comparative Vertebrate Intelligence.Andreas Nieder - 2020 - Frontiers in Psychology 11.
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  • Sexual-selection accounts of human characteristics: Just So Stories or scientific hypotheses?Nora Newcombe & Mary Ann Baenninger - 1996 - Behavioral and Brain Sciences 19 (2):259-260.
    We evaluate three of Geary's claims, finding that there is little evidence for sex differences in object- vs. person-orientation; sex differences in competition, even if biologically caused, lead to sex differences in mathematics only given a certain style of teaching; and sex differences in mental rotation, though real, are not well explained in a sociobiological framework or by the proximate biological variables assumed by Geary.
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  • Reinforcement schedules and “numerical competence”.John A. Nevin - 1988 - Behavioral and Brain Sciences 11 (4):594-595.
  • Symbolic and nonsymbolic number comparison in children with and without dyscalculia.Christophe Mussolin, Sandrine Mejias & Marie-Pascale Noël - 2010 - Cognition 115 (1):10-25.
    Developmental dyscalculia (DD) is a pervasive difficulty affecting number processing and arithmetic. It is encountered in around 6% of school-aged children. While previous studies have mainly focused on general cognitive functions, the present paper aims to further investigate the hypothesis of a specific numerical deficit in dyscalculia. The performance of 10- and 11-year-old children with DD characterised by a weakness in arithmetic facts retrieval and age-matched control children was compared on various number comparison tasks. Participants were asked to compare a (...)
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  • Commentary on Leibovich et al.: What next?Kelly S. Mix, Nora S. Newcombe & Susan C. Levine - 2017 - Behavioral and Brain Sciences 40.
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  • Is it the thought that counts?Brendan McGonigle - 1988 - Behavioral and Brain Sciences 11 (4):593-594.
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  • Multiple object individuation and subitizing in enumeration: a view from electrophysiology.Veronica Mazza & Alfonso Caramazza - 2015 - Frontiers in Human Neuroscience 9.
  • You can't succeed without really counting.Euan M. Macphail - 1988 - Behavioral and Brain Sciences 11 (4):592-593.
  • Numbers and counting: Intuitionistic and gestalt psychological viewpoints.Abraham S. Luchins & Edith H. Luchins - 1988 - Behavioral and Brain Sciences 11 (4):591-592.
  • Toward an integrative approach to numerical cognition.Tali Leibovich, Naama Katzin, Moti Salti & Avishai Henik - 2017 - Behavioral and Brain Sciences 40.
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  • Number reckoning strategies: A basis for distinction.Eugene C. Lechelt - 1988 - Behavioral and Brain Sciences 11 (4):590-591.
  • Symbolic Number Comparison Is Not Processed by the Analog Number System: Different Symbolic and Non-symbolic Numerical Distance and Size Effects.Attila Krajcsi, Gábor Lengyel & Petia Kojouharova - 2018 - Frontiers in Psychology 9.
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  • Resources dimorphism sexual selection and mathematics achievement.Diana Eugenie Kornbrot - 1996 - Behavioral and Brain Sciences 19 (2):259-259.
    Geary's model is a worthy effort, but ambiguous on important issues. It ignores differential resource allocation, although this follows directly from sexual selection via differential parental investment. Dimorphism in primary traits is arbitrarily attributed to sexual selection via intramale competition, rather than direct evolutionary pressures. Dubious predictions are made about the consequences of raising mathematics achievement.
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  • Number concepts in animals: A multidimensional array.James E. King - 1988 - Behavioral and Brain Sciences 11 (4):590-590.
  • Some problematic links between hunting and geometry.Meredith M. Kimball - 1996 - Behavioral and Brain Sciences 19 (2):258-259.
    Geary's emphasis on hunting ignores the possible importance of other human activities, such as scavenging and gathering, in the evolution of spatial abilities. In addition, there is little evidence that links spatial abilities and math skills. Furthermore, such links have little practical importance given the small size of most differences and girls' superior performance in mathematics classrooms.
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  • Putting the world in mind: The case of mental representation of quantity.Naama Katzin, David Katzin, Adi Rosén, Avishai Henik & Moti Salti - 2020 - Cognition 195 (C):104088.
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